首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Thickness-Dependent Oscillations of the Critical Magnetic Field Induced by the Quantum Size Effect in Superconducting Nanofilms
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Thickness-Dependent Oscillations of the Critical Magnetic Field Induced by the Quantum Size Effect in Superconducting Nanofilms

机译:超导纳米膜中量子尺寸效应引起的临界磁场的厚度依赖性振荡。

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摘要

The superconductor to normal metal transition driven by the in-plane magnetic field is investigated for Al nanofilms. Taking the Pauli breaking mechanism (with no orbital effect) into account, it is shown that the critical field oscillates as a function of the nanofilm thickness. This effect is discussed in terms of the quantization of electron energy caused by the confinement of its motion in the direction perpendicular to the film. The analysis of the critical field in the context of Clogston-Chandrasekhar limit is also included.
机译:对于铝纳米膜,研究了由面内磁场驱动的超导体到正常金属的跃迁。考虑到泡利破裂机制(无轨道效应),表明临界场随纳米膜厚度的变化而振荡。通过限制电子在垂直于薄膜方向上的运动引起的电子能量的量化来讨论这种效应。还包括对Clogston-Chandrasekhar极限范围内的临界场的分析。

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